首页> 外文会议>ASME International Manufacturing Science and Engineering Conference >EXPERIMENTAL INVESTIGATION OF HARD TURNING MECHANISMS BY PCBN TOOLING EMBEDDED MICRO THIN FILM THERMOCOUPLES
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EXPERIMENTAL INVESTIGATION OF HARD TURNING MECHANISMS BY PCBN TOOLING EMBEDDED MICRO THIN FILM THERMOCOUPLES

机译:PCBN工具嵌入式微薄薄膜热电偶硬车削机构的实验研究

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Temperature-distribution measurements in cutting tools during the machining process are extremely difficult and remain an unresolved problem. In this paper, cutting temperature distributions are measured by thin film thermocouples (TFTCs) embedded into Polycrystalline Cubic Boron Nitride (PCBN) cutting inserts in the immediate vicinity of the tool-chip interface. Using these measurements, steady and dynamic phenomena during hard turning as well as the chip morphology and formation process were analyzed based on the cutting temperature distributions in the insert. The relationship between the cutting temperature-field distributions in the PCBN insert and the segmented chip formation is analyzed using temperature-distribution mapping. It is shown that the temperature-distribution in the cutting zone depends on the shearing band distribution in the chip and the thermal transfer rate from the heat generation zone to the cutting tool. Furthermore, it became evident that the material flow stress and the shearing bands greatly affect not only the chip formation morphology but also the cutting temperature field distributions in the cutting zone of the cutting insert.
机译:加工过程中切割工具中的温度分布测量非常困难,并且仍然是未解决的问题。在本文中,切削温度分布通过嵌入到工具芯片界面的立即附近的多晶立方硼(PCBN)切削刀片中的薄膜热电偶(TFTCS)测量。使用这些测量,基于插入件中的切割温度分布分析了硬转动期间的稳定和动态现象以及芯片形态和形成过程。使用温度分布映射分析了PCBN插入件中的切削温度场分布与分段芯片形成之间的关系。结果表明,切割区中的温度分布取决于芯片中的剪切带分布和从发热区到切削工具的热传递速率。此外,可以显而易见的是,材料流应力和剪切带不仅影响切削刀片的切割区域中的切削温度场分布而大大影响。

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